183
PERFORMANCE DATA — 579F
COOLING CAPACITIES
LEGEND
NOTES:
1. Direct interpolation is permissible. Do not extrapolate.
2. The following formulas may be used:
Where: h
ewb
= Enthalpy of air entering evaporator coil
3. The SHC is based on 80 F edb temperature of air entering evaporator coil.
Below 80 F edb, subtract (corr factor x cfm) from SHC.
Above 80 F edb, add (corr factor x cfm) to SHC
.
Interpolation is permissible.
Correction Factor = 1.10 x (1 – BF) x (edb – 80).
579F180 (15 Tons)
Temp (F)
Air Entering
Condenser
(Edb)
Evaporator Air Quantity — Cfm
4500
5250
Evaporator Air — Ewb (F)/BF
54/0.48
58/0.32
62/0.22
67/0.20
72/0.19
76/0.24
80/0.04
54/0.54
58/0.39
62/0.25
67/0.23
72/0.21
76/0.23
80/0.04
75
TC
—
168
177
192
209
225
240
171
171
182
197
214
229
246
SHC
—
152
142
123
103
85
69
171
150
151
130
108
88
69
kW
—
12.4
12.6
13.0
13.3
13.6
13.9
12.5
12.6
12.7
13.1
13.4
13.7
14.0
85
TC
159
164
171
186
202
219
233
166
172
175
190
207
222
237
SHC
159
148
139
120
100
83
66
166
151
148
127
105
86
67
kW
13.7
13.8
14.1
14.4
14.8
15.5
15.4
13.9
14.0
14.1
14.5
14.9
15.2
15.5
95
TC
154
159
165
179
195
210
226
161
164
169
183
199
214
229
SHC
154
142
136
117
98
80
64
161
155
145
124
102
83
64
kW
15.3
15.4
15.5
15.9
16.3
16.7
17.3
15.5
15.5
15.7
16.0
16.5
16.8
17.1
105
TC
149
154
158
172
187
201
216
156
156
162
176
191
205
222
SHC
149
137
133
114
95
78
61
156
156
142
121
99
81
62
kW
16.9
17.0
17.1
17.6
18.0
18.4
18.7
17.2
17.1
17.2
17.7
18.1
18.5
19.1
115
TC
144
145
152
165
179
193
207
150
151
156
168
183
196
210
SHC
144
142
130
111
92
75
58
150
151
137
118
96
78
58
kW
18.6
18.6
18.9
19.3
19.8
20.2
20.6
18.9
18.9
19.0
19.5
19.9
20.3
20.7
117
TC
143
143
150
163
178
191
205
149
149
154
167
181
194
208
SHC
143
142
129
110
91
74
57
149
149
136
117
96
77
58
kW
18.9
19.0
19.2
19.7
20.2
20.5
20.9
19.2
19.2
19.4
19.8
20.3
20.7
21.0
120
TC
141
141
148
161
175
—
—
147
148
152
164
179
—
—
SHC
141
141
128
109
90
—
—
147
148
135
116
95
—
—
kW
19.5
19.5
19.8
20.2
20.7
—
—
19.8
19.8
19.9
20.4
20.8
—
—
579F180 (15 Tons) (cont)
Temp (F)
Air Entering
Condenser
(Edb)
Evaporator Air Quantity — Cfm
6000
6750
Evaporator Air — Ewb (F)/BF
54/0.58
58/0.43
62/0.30
67/0.25
72/0.23
76/0.24
80/0.04
54/0.62
58/0.48
62/0.36
67/0.28
72/0.25
76/0.25
80/0.03
75
TC
178
174
185
200
218
233
250
183
179
183
203
221
236
253
SHC
178
171
159
136
112
91
70
183
179
161
142
116
93
70
kW
12.7
12.7
12.8
13.1
13.5
13.8
14.1
12.8
12.7
12.8
13.2
13.5
13.9
14.1
85
TC
173
173
179
193
210
227
244
178
178
183
196
213
228
247
SHC
173
172
156
133
109
89
68
178
178
161
139
113
91
68
kW
14.1
14.1
14.2
14.6
15.0
15.8
16.2
14.2
14.2
14.3
14.7
15.1
15.3
16.3
95
TC
167
167
173
186
203
217
232
173
173
177
189
205
220
235
SHC
167
167
152
130
106
86
64
173
173
157
137
111
88
65
kW
15.7
15.6
15.8
16.1
16.6
16.9
17.2
15.8
15.8
15.9
16.2
16.6
17.0
17.3
105
TC
162
162
167
179
194
208
223
168
167
171
181
197
211
225
SHC
162
162
147
127
104
83
61
168
167
152
133
108
85
62
kW
17.3
17.3
17.4
17.8
18.2
18.5
18.9
17.4
17.4
17.5
17.9
18.3
18.6
18.9
115
TC
156
156
160
171
186
199
213
160
160
165
173
188
201
215
SHC
156
156
143
124
101
80
59
160
160
145
130
104
82
59
kW
19.1
19.1
19.1
19.6
20.0
20.4
20.7
19.2
19.2
19.3
19.6
20.1
20.5
20.8
117
TC
154
155
159
169
184
197
211
159
159
163
171
186
199
—
SHC
154
155
142
124
100
79
58
159
159
144
129
104
82
—
kW
19.4
19.4
19.5
19.9
20.4
20.8
21.1
19.6
19.6
19.7
20.0
20.4
20.8
—
120
TC
153
153
157
167
181
—
—
157
157
161
169
—
—
—
SHC
153
153
140
122
99
—
—
157
157
142
128
—
—
—
kW
19.9
19.9
20.0
20.4
20.9
—
—
20.1
20.1
20.2
20.5
—
—
—
BF
—
Bypass Factor
Edb
—
Entering Dry-Bulb
Ewb
—
Entering Wet-Bulb
kW
—
Compressor Motor Power Input
ldb
—
Leaving Dry-Bulb
lwb
—
Leaving Wet-Bulb
SHC
—
Sensible Heat Capacity (1000 Btuh) Gross
TC
—
Total Capacity (1000 Btuh) Gross
t
ldb
=
t
edb
–
sensible capacity (Btuh)
1.10 x cfm
t
lwb
=
Wet-bulb temperature corresponding to enthalpy of air
leaving evaporator coil (h
lwb
)
h
lwb
=
h
ewb
–
total capacity (Btuh)
4.5 x cfm
BYPASS
FACTOR
(BF)
ENTERING AIR DRY-BULB TEMP (F)
79
78
77
76
75
under 75
81
82
83
84
85
over 85
Correction Factor
0.05
1.04
2.07
3.11
4.14
5.18
Use formula
shown below.
0.10
0.98
1.96
2.94
3.92
4.91
0.20
0.87
1.74
2.62
3.49
4.36
0.30
0.76
1.53
2.29
3.05
3.82
0.40
0.65
1.31
1.96
2.62
3.27
0.50
0.55
1.09
1.64
2.18
2.73
0.60
0.44
0.87
1.31
1.74
2.18
0.70
0.33
0.65
0.98
1.31
1.64
579
F18
0
-300
Содержание 581A
Страница 30: ...30 BASE UNIT DIMENSIONS 580F036 072 a48 8195 580F036 151 ...
Страница 31: ...31 BASE UNIT DIMENSIONS 580F073 a48 8196 580F036 151 ...
Страница 32: ...32 BASE UNIT DIMENSIONS 580F090 120 150 a48 8197 580F036 151 ...
Страница 33: ...33 BASE UNIT DIMENSIONS 580F091 103 121 151 a48 8198 580F036 151 ...
Страница 91: ...91 BASE UNIT DIMENSIONS 581B036 072 a48 8199 581B036 150 ...
Страница 93: ...93 ACCESSORY DIMENSIONS 581B036 072 a48 8201 581B036 150 ...
Страница 94: ...94 ACCESSORY DIMENSIONS 581B090 150 a48 8202 581B036 150 ...
Страница 139: ...139 TYPICAL WIRING SCHEMATICS 581B SIZES 036 150 581B090 460 3 60 Shown a48 8233 580F036 151 AND 581B036 150 ...
Страница 150: ...150 BASE UNIT DIMENSIONS 581C024 060 581C024 060 ...
Страница 198: ...198 TYPICAL WIRING SCHEMATICS 579F 579F240 208 230 V Shown a48 7929 ...
Страница 202: ...202 TYPICAL PIPING AND WIRING 579F180 300 579F180 Shown LEGEND NEC National Electrical Code b48 1258 ...
Страница 205: ...205 BASE UNIT DIMENSIONS 580F180 210 a48 8203 580F180 300 ...
Страница 206: ...206 BASE UNIT DIMENSIONS 580F240 a48 8204 ...
Страница 207: ...207 BASE UNIT DIMENSIONS 580F300 a48 8205 580F180 300 ...
Страница 209: ...209 ACCESSORY DIMENSIONS 580F300 Vertical Roof Curbs 580F300 a48 7456 580F180 300 ...
Страница 227: ...227 TYPICAL PIPING AND WIRING 580F180 300 LEGEND NEC National Electrical Code b48 1258 580F180 300 ...
Страница 233: ...233 BASE UNIT DIMENSIONS 581A210 300 a48 8206 581A155 180 ...
Страница 237: ...237 ACCESSORY DIMENSIONS 581A210 300 a48 8234 581A155 180 ...
Страница 280: ...280 TYPICAL PIPING AND WIRING 581A 581A155 Shown LEGEND NEC National Electrical Code b48 1258 ...
Страница 297: ...297 ...